Okada Takashi, Singh Mohan B, Bhalla Prem L
Plant Molecular Biology and Biotechnology laboratory, Australian Research Council Centre of Excellence for Integrative Legume Research, The University of Melbourne, Parkville, Victoria 3010, Australia.
Plant Mol Biol. 2006 Nov;62(4-5):503-12. doi: 10.1007/s11103-006-9036-8. Epub 2006 Aug 17.
Histones are vital structural proteins of chromatin that influence its dynamics and function. The tissue-specific expression of histone variants has been shown to regulate the expression of specific genes and genomic stability in animal systems. Here we report on the characterization of five histone H3 variants expressed in Lilium generative cell. The gcH3 and leH3 variants show unique sequence diversity by lacking a conserved lysine residue at position 9 (H3K9). The gH3 shares conserved structural features with centromeric H3 of Arabidopsis. The gH3 variant gene is strongly expressed in generative cells and gH3 histone is incorporated in to generative cell chromatin. The lysine residue of H3 at position 4 (H3K4) is highly methylated in the nuclei of generative cells of mature pollen, while methylation of H3K4 is low in vegetative cell nuclei. Taken together, these results suggest that male gametic cells of Lilium have unique chromatin state and histone H3 variants and their methylation might be involved in gene regulation of male gametic cells.
组蛋白是染色质的重要结构蛋白,影响其动态变化和功能。在动物系统中,组蛋白变体的组织特异性表达已被证明可调节特定基因的表达和基因组稳定性。在此,我们报告了在百合生殖细胞中表达的五种组蛋白H3变体的特征。gcH3和leH3变体通过在第9位(H3K9)缺乏保守的赖氨酸残基而表现出独特的序列多样性。gH3与拟南芥着丝粒H3具有保守的结构特征。gH3变体基因在生殖细胞中强烈表达,并且gH3组蛋白被整合到生殖细胞染色质中。在成熟花粉的生殖细胞核中,第4位(H3K4)的H3赖氨酸残基高度甲基化,而在营养细胞核中H3K4的甲基化程度较低。综上所述,这些结果表明百合的雄配子细胞具有独特的染色质状态和组蛋白H3变体,并且它们的甲基化可能参与雄配子细胞的基因调控。